电压谐波浓度下变频调速电动机局部放电概率的量化

W. Hassan, G. Hussain, F. Mahmood, Muhammad Akmal
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引用次数: 1

摘要

局部放电诊断被认为是电力系统各种电气元件绝缘健康评估的可靠技术。PD诊断试验一般在实验室进行,忽略了测试电压波形中谐波污染的影响。然而,由变频驱动(VFD)驱动的电动机(EMs)的运行会在正弦测试电压波形中产生谐波畸变。变频器低速运行时,测试电压波形谐波畸变的影响增大。测试电压波形中的附加畸变参数可以显著提高电磁绝缘中的PD活度。因此,为了正确理解放电数据,在进行在线放电测量时,必须考虑测试电压波形的实际谐波谱。本文提出了一种量化不同电压谐波浓度下vfd馈电电磁器件局部放电概率的方法。在实验工作中,在8种EMs的不同工作条件下进行了PD诊断测试,并通过计算不同谐波失真水平下的PD特征参数来研究PD的严重程度。并对几种概率分布的概率密度函数和累积分布函数进行了计算,对不同谐波水平下的PD数据进行了统计处理。最后,利用分布拟合工具找到了能准确表征不同电压谐波浓度下局部放电概率的合适分布。该方法可用于研究谐波畸变对局部放电活度的影响,并可用于估计电磁环境中定子绝缘的寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantifying the Probability of Partial Discharge in VFD Fed Electric Motors under Voltage Harmonics Concentration
Partial discharges (PD) diagnostics are considered as reliable techniques for the insulation health assessment of various electrical components of the power system. Generally, PD diagnostic tests are performed in laboratory by ignoring the effect of harmonic pollution in test voltage waveform. However, the operation of electric motors (EMs) fed by variable frequency drives (VFD) produces harmonic distortion in the sinusoidal test voltage waveform. During low speed operation of VFD, the influence of harmonic distortion in test voltage waveform is increased. The additional distortion parameters in the test voltage waveform can significantly increase the PD activity in the EM insulation. Therefore, for correct understanding of PD data, it is essential to consider the actual harmonic spectrum of the test voltage waveform during online PD measurement. This paper presents a methodology for the quantification of the probability of PD in VFD-fed EMs under different concentration of voltage harmonics. For the experimental work, PD diagnostic tests have been performed under variable operating conditions of eight EMs and PD severity is investigated by calculating the PD characteristic parameters at different harmonic distortion levels. Also, the probability density functions and cumulative distribution functions for several probability distributions were evaluated to statistically process the PD data at different harmonic levels. Finally, the distribution fitting tools have been implemented to find an appropriate distribution that can precisely characterize the probability of PD under different concentration of voltage harmonics. The proposed method may be utilized for studying the effect of harmonic distortion on PD activity and estimating the lifetime of stator insulation in EMs.
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